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The Rise of A Habitable Planet: Four Required Conditions for the Origin of Life in the Universe

机译:可居住星球的崛起:宇宙生命起源的四个必要条件

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The advanced version of the author’s inversion concept of the origin of terrestrial life and its application for life in the Universe has been substantiated. A key step in the transition to life consists in the thermodynamic inversion of non-living prebiotic microsystems when the contributions of free energy (F) and information (I) become prevalent over the contribution of entropy (S). It is based the thermodynamic corridor that is mandatory for all chemical scenarios for the origin of life: F + I S (prebiotic microsystem) → F + I ≈ S (intermediate stage, inversion moment) → F + I S (primary living unit). A prebiotic organic microsystem can reach the intermediate state between non-life and life only under high-frequency and multilevel oscillations of physic-chemical parameters in hydrothermal environments. The oscillations are considered the fourth required condition for the origin of life, in addition to the three well-known ones: the availability of organic matter, an aqueous medium, and a source of energy. The emergence of initial life sparks in nonequilibrium prebiotic microsystems (being at the intermediate state) proceeds through the continuous response (counteraction) of prebiotic microsystems to incessant physic-chemical oscillations (stress). The next step of laboratory simulations on the origin of life directed to the exploration of the microsystems’ response to high-frequency oscillations (10 ?10 s–30 min) is proposed. Finally, some fragments of the general scenario of the origin of life in the Universe based on the whole four required conditions have been outlined.
机译:作者对地球生命起源及其在宇宙中的应用的反演概念的高级版本已得到证实。生命过渡的关键步骤在于,当自由能(F)和信息(I)的贡献超过熵(S)的贡献时,非生命性益生元微系统的热力学反转。它基于热力学通道,对于生命起源的所有化学情况都是必不可少的:F + I S(主要生活)单元)。益生元有机微系统只有在热液环境中物理化学参数的高频和多级振荡下才能达到非生命和生命之间的中间状态。除了三个众所周知的振荡,振荡被认为是生命起源的第四个必要条件:有机物的可利用性,水介质和能量的来源。在非平衡的益生元微系统(处于中间状态)中,初始生命火花的出现是通过益生元微系统对持续的物理化学振荡(应力)的连续响应(反作用)而进行的。建议对生命起源进行实验室模拟的下一步,以探索微系统对高频振荡(> 10?10 s– <30 min)的响应。最后,概述了基于全部四个必要条件的宇宙生命起源的一般情景的一些片段。

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